Analysis and Implementation of Controlled Semiconductor Switch for Ultra-Wideband Radar Sensor Applications
Author:
Jurik Patrik1ORCID, Sokol Miroslav1ORCID, Galajda Pavol1ORCID, Drutarovsky Milos1ORCID
Affiliation:
1. Department of Electronics and Multimedia Telecommunications, Technical University of Košice, 042 00 Kosice, Slovakia
Abstract
All ultra-wideband (UWB) sensor applications require hardware designed directly for their specific application. The switching of broadband radio frequency and microwave signals is an integral part of almost every piece of high-frequency equipment, whether in commercial operation or laboratory conditions. The trend of integrating various circuit structures and systems on a chip (SoC) or in a single package (SiP) is also related to the need to design these integrated switches for various measuring devices and instruments in laboratories, paradoxically for their further development. Another possible use is switching high-frequency signals in telecommunications devices, whether mobile or fixed networks, for example, for switching signals from several antennas. Based on these requirements, a high-frequency semiconductor integrated switch with NMOS transistors was designed. With these transistors, it is possible to achieve higher integration than with bipolar ones. Even though MOSFET transistors have worse frequency characteristics, we can compensate them to some extent with the precise design of the circuit and layout of the chip. This article describes the analysis and design of a high-frequency semiconductor integrated switch for UWB applications consisting of three series-parallel switches controlled by CMOS logic signals. They are primarily intended for UWB sensor systems, e.g., when switching and configuring the antenna MIMO system or when switching calibration tools. The design of the switch was implemented in low-cost 0.35 µm SiGe BiCMOS technology with an emphasis on the smallest possible attenuation and the largest possible bandwidth and isolation. The reason for choosing this technology was also that other circuit structures of UWB systems were realized in this technology. Through the simulations, individual parameters of the circuit were simulated, the layout of the chip was also created, and the parameters of the circuit were simulated with the parasitic extraction and the inclusion of parasitic elements (post-layout simulations). Subsequently, the chip was manufactured and its parameters were measured and evaluated. Based on these measurements, the designed and fabricated UWB switch was found to have the following parameters: a supply current of 2 mA at 3.3 V, a bandwidth of 6 GHz, an insertion loss (at 1 GHz) of −2.2 dB, and isolation (at 1 GHz) of −33 dB, which satisfy the requirements for our UWB sensor applications.
Funder
Slovak Research and Development Agency Scientific Grant Agency Ilmsens, GmbH. in Ilmenau, Germany
Subject
Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry
Reference30 articles.
1. Sachs, J., Kmec, M., Rauschenbach, P., Herrmann, R., Schilling, K., and Helbig, M. (2012, January 12–14). Toward integrated ultra-wideband MIMO-sensors. Proceedings of the 2012 The 7th German Microwave Conference, Ilmenau, Germany. 2. Tinella, C., Richard, O., Cathelin, A., Reaute, F., Majcherczak, S., Blanchet, F., and Belot, D. (2006, January 18–20). 0.13/spl mu/m CMOS SOI SP6T antenna switch for multi-standard handsets. Proceedings of the Digest of Papers. 2006 Topical Meeting on Silicon Monolithic Integrated Circuits in RF Systems, San Diego, CA, USA. 3. CMOS RF switch with fast discharge feature;Solomko;IEEE Solid-State Circ. Lett.,2021 4. Kara-Omar, A., Dragomirescu, D., Coustou, A., and Plana, R. (2013, January 6–8). UWB down-conversion mixer in CMOS 130 nm technology for wireless sensor network applied to aerospace application. Proceedings of the 2013 European Microwave Integrated Circuit Conference, Nuremberg, Germany. 5. Slovak, S., Galajda, P., Hoffmann, J., and Kocur, D. (2016, January 19–20). New ultra-wideband sensor system for measuring the properties of liquid materials. Proceedings of the 2016 26th International Conference Radioelektronika (RADIOELEKTRONIKA), Kosice, Slovakia.
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